杨斌

时间:2021-08-03 点击数:


专业教师简介

姓名(中文/汉语拼音)

杨斌 / Yang Bin

职称

教授(二级)

出生年月

1978年05月

所在学院(系、所)

能源与安全工程学院建筑环境与能源应用工程系

通讯地址

天津市西青区津静路26号

电子信箱

binyang@tcu.edu.cn

主要研究方向

人体热舒适与热生理学,通风与气流组织,建筑节能与智能化

主要学历

(1) 2004-08 至 2009-12, 新加坡国立大学, 建筑科学, 博士

(2) 2004-08 至 2009-12, 丹麦技术大学, 室内环境与能源, 博士

(3) 2000-09 至 2003-06, 天津大学, 建筑环境与设备工程, 硕士

(4) 1996-09 至 2000-06, 天津大学, 建筑环境与设备工程, 学士

主要学术经历

(1) 2021-12 至 今, 天津城建大学, 能源与安全工程学院, 教授

(2) 2018-12 至 2021-11, 西安建筑科技大学, 建筑设备科学与工程学院,建筑环境与能源应用工程系, 教授

(3) 2018-08 至 2018-11, 瑞典于默奥大学, 应用物理与电子系, 副教授

(4) 2014-10 至 2018-08, 瑞典于默奥大学, 应用物理与电子系, 讲师

(5) 2013-03 至 2014-09, 加州大学伯克利分校

(6) 2010-10 至 2013-02, 河北工业大学, 能源与环境工程学院,建筑环境与能源应用工程系, 副教授

主要讲授课程

本科生课程:建筑环境学

研究生课程:人工智能与机器视觉新技术

主要学术成就、奖励及荣誉

天津城建大学能源与安全工程学院院长、二级教授、博导。2000年、2003年于天津大学获得学士与硕士学位。2009年获得丹麦技术大学与新加坡国立大学联合授予博士学位。师从丹麦技术大学Fanger实验室的Arsen Melikov教授和新加坡国立大学的Chandra Sekhar教授。博士后师从于美国加州大学伯克利分校土木与环境工程系杰出教授,知名国际期刊Indoor Air主编William Nazaroff教授。2014年至2018年在瑞典于默奥大学任助理教授、博导。2018年获得瑞典于默奥大学终身教授、博导。现兼任瑞典于默奥大学讲座教授,厦门大学讲座教授(福建省闽江学者讲座教授),天津大学教授、博导,西安建筑科技大学教授、博导,青海民族大学讲座教授(青海省昆仑英才)。

2020年获得全国暖通空调杰出青年。2020年获得陕西省致公党先进个人。2019年获得华夏建设科学技术奖一等奖。2017 年获得国家重大人才计划“青年项目”资助。2015年获得欧盟暖通空调学会青年科学家奖,是迄今为止唯一获此奖项的中国人。2014年获得美国供热制冷空调工程师学会拉尔夫-内文斯人居环境与生理学奖。2008年以丹麦地区第一名获得国家教育部优秀自费留学生奖。2007年获得美国供热制冷空调工程师学会博士生奖。2006年与2007年连续两年获得新加坡总统奖等。

主要从事建筑室内环境与节能,暖通空调新技术,建筑智能化等方面的研究。共发表学术论文150篇,大部分被SCI检索。获得专利30余项,其中美国专利5项。是国际杂志Frontiers in Indoor Environment副主编,Indoor and Built Environment, International Journal of Ventilation, Science and Technology for the Built Environment等多个知名学术杂志的编委。多次应邀前往世界知名大学及研究机构进行专题演讲,包括美国南加州大学、加拿大阿尔伯塔大学、欧盟暖通空调学会、中国清华大学、哈尔滨工业大学、同济大学等。担任中组部国家重大人才计划外专项目会评专家,教育部长江学者奖励计划函评专家,瑞典国家自然科学基金函评专家,中国国家自然科学基金函评专家等。

2019年10月1日应邀参加在天安门广场举行的中华人民共和国建国70周年阅兵观礼。相关研究成果于2021年接受央媒新华社、中央广播电台报道,2022年接受人民日报、天津日报报道。2022年参加中央社会主义学院第四十七期民主党派中青年干部培训班。

主要教学和科研项目及角色

【主持纵向】

1. 建筑环境智能营造新技术,国家千人计划青年项目,2019.01-2021.12。

2. 计算机视觉在山地建筑环境监测及调控方面的应用,国家重点实验室开放基金,2022.01-2023.12。

3. 时间非稳态空间非均匀建筑暂留区的环境营造与智能控制研究,国家自然科学基金面上项目,2023.01-2026.12。

4. 基于计算机视觉技术的建筑施工及运维过程碳排放智能管控研究,部属重点实验室开放基金,2024.07-2026.06。

5. 基于机器视觉传感的睡眠环境智能调控,天津市自然科学基金-重点项目,2025.04-2028.03。

【主持横向】

1. 天津师范大学京津冀教育协同发展实训基地项目绿色建筑设计,7万,2021.12-2025.12。

2. 公共建筑智能化运营关键技术研发,30万,2021.12-2025.12。

3. 基于非接触式人体热舒适检测技术的视频图像智能楼宇环测检测终端的研发及产业化,20万,2024.11-2027.11。

4. 基于脑电眼动检测技术的智能楼宇环测检测终端的研发及产业化,100万,2024.12-2027.12。

5. 解决湿热地区空调送风过冷兼顾光伏幕墙冷却的系统装置,25万,2024.12-2034.12。

6. 一种带环形风口的层式通风系统,25万,2024.12-2034.12。

7. 基于复合蓄热协同调控技术的电热蓄热一体机研发及产业化,300万,2025.03-2028.03。

8. 高性能纳米复合熔融盐研发,20万,2025.11-2026.12。

代表性论文/专利/论著及检索情况

【近五年第一或通讯作者论文】

[1] Effects of bergamot aromatherapy on sleep: A placebo-controlled trial. Building Simulation, 2026, 第一

[2] Heating performance optimization and parametric study of a ceiling fan aided diffuse ceiling ventilation system. Applied Thermal Engineering, 2026, 第一

[3] Machine learning based thermal response study of University students under summer outdoor military training. International Journal of Biometeorology, 2026, 第一

[4] Numerical analysis on the thermal and hydraulic features of segmented micro heat sinks with ribbed walls. Thermal Science and Engineering Progress, 2025, 通讯

[5] The impact of smartphones pre-bedtime on sleep quality: a controlled crossover study with University students in China. Indoor and Built Environment, 2025, 第一

[6] Experimental investigation on thermal performance of seawater source ice slurry heat pump system. Applied Thermal Energy, 2025, 第一

[7] Investigating the impact of indoor environment quality on user satisfaction in public library: A data fusion approach. Journal of Building Engineering, 2025, 第一

[8] Thermo-hydrodynamic characteristics of hybrid nanofluids for chip-level liquid cooling in data centers: A review of numerical investigations. Energy Engineering, 2025, 通讯

[9] Real-time prediction of individual thermal state based on video understanding. Energy and Buildings, 2025, 通讯

[10] Generative models for HVAC fault detection and diagnosis in indoor and built environment. Journal of Building Design and Environment, 2025, 通讯

[11] Optimizing indoor air movement for comfort and health: a study of ceiling based convective heating with reversed fan operation. Building and Environment, 2025, 通讯

[12] Stability analysis of discrete Boltzmann simulation for supersonic flows: Influencing factors, coupling mechanisms and optimization strategies. Physics of Fluids, 2025, 通讯

[13] Computer vision-aided indoor thermal comfort monitoring. Indoor and Built Environment, 2025, 第一

[14] Comparative analysis of thermal and visual comfort perceptions of outdoor military training of University students. Urban Climate, 2025, 第一

[15] Ventilation and smoke exhaust study from dynamic fire source in subway tunnel. International Journal of Ventilation, 2025, 通讯

[16] The Effects of Visual Perception in Outdoor Open Spaces on Thermal Comfort of Military Training of University Students. Journal of Chinese Urban Forestry, 2025, 第一

[17] The electricity load prediction model for residential buildings: A critical review of output types, prediction methods and driving factors. Buildings, 2025, 通讯

[18] Experimental investigation on the phase change liquid cooling characteristics in the offset grooved microchannel heat sink. Applied Thermal Engineering, 2025, 通讯

[19] Energy-efficient control strategy for air conditioning and mechanical ventilation system based on occupant distribution—A case study on stratum ventilation. Journal of Building Engineering, 2025, 通讯

[20] The effect of winter prebedtime footbath on sleep quality in young men: A pilot study. Indoor Air, 2025, 第一

[21] Airflow and temperature characteristics of diffuse ceiling ventilation with ceiling fan under heating mode: An experimental study. Energy and Buildings, 2025, 第一

[22] A review for non-uniform load distribution and solutions in data centers: micro-scale liquid cooling and large-scale air cooling. Energies, 2025, 通讯

[23] An end-to-end contactless method for detecting thermal discomfort postures and controlling air conditioner. Energy and Buildings, 2025, 通讯

[24] Thermal–hydraulic performance analysis of combined heat sink with open microchannels and embedded pin fins. Energies, 2024, 通讯

[25] Numerical study on flow field of high-speed train passing through a new type of station. Journal of Wind Engineering and Industrial Aerodynamics, 2024, 通讯

[26] Co-flow jets application for occupant targeted ventilation: focus on thermal comfort and air quality, Building and Environment, 2024, 通讯

[27] Occupant thermal and draft perceptions under various intermittent regimes of an intermittent air jet strategy, Building and Environment, 2024, 通讯

[28] Investigation on the thermal and hydraulic characteristics of the micro heat sinks with grooves and pin fins by Taguchi-based sensitivity analysis, Applied Thermal Engineering, 2024, 通讯

[29] Numerical study on aerodynamic pressure caused by high-speed train passing through the subway station, International Journal of Ventilation, 2024, 通讯

[30] Machine learning-based prediction of outdoor thermal comfort: combining Bayesian optimization and the SHAP model, Building and Environment, 2024, 通讯

[31] Construction Site Hazard Identification and Worker Adverse Reaction Monitoring Using Electroencephalograms: A Review, Buildings, 2024, 通讯

[32] Heat stress mitigation with ice cooling vests in PPE-clad medical workers: effects of cooling area and gender differences, Building and Environment, 2023, 通讯

[33] Computer vision technology for monitoring indoor and outdoor environments and HVAC equipment: A review, Sensors, 2023, 第一

[34] Thermal responses in temporarily occupied space in the summer: spatial-temporal synergetic alliesthesia using a ceiling fan, Journal of Building Engineering, 2023, 通讯

[35] Pocket park in urban regeneration of China: Policy and perspective, City and Environment Interactions, 2023, 通讯

[36] Preparation and filtration performance of antibacterial PVDF/SiO2/Ag composite nanofiber membrane, Journal of Building Engineering, 2023, 通讯

[37] A novel occupant-centric stratum ventilation system using computer vision Occupant detection, thermal comfort, air quality, and energy savings, Building and Environment, 2023, 通讯

[38] Thermal and draught perception in fluctuating stratified thermal environments with intermittent impinging jet ventilation, Building and Environment, 2023, 通讯

[39] Performance evaluation of ductless personalized ventilation combined with impinging jet ventilation, Applied Thermal Engineering, 2022, 第一及通讯

[40] Contactless sleep posture measurements for demand-controlled sleep thermal comfort: A pilot study, Indoor Air, 2022, 通讯

[41] Assessment of thermal comfort and air quality of room conditions by impinging jet ventilation integrated with ductless personalized ventilation, Sustainability, 2022, 第一及通讯

[42] Review on the application of machine vision in defrosting and decondensation on the surface of heat exchanger, Sustainability, 2022, 第一及通讯

[43] Thermal comfort and energy savings of personal comfort systems in low temperature office: A field study, Energy and Buildings, 2022, 第一及通讯

[44] Digital Twins for Intelligent Green Buildings. Buildings, 2022, 第一及通讯

[45] Comparison of models for predicting winter individual thermal comfort based on machine learning algorithms. Building and Environment, 2022, 第一及通讯

[46] Edge intelligence based digital twins for internet of autonomous unmanned vehicles, Software: Practice and Experience, 2022, 第一及通讯

[47] Performance optimization of a sidewall radiant heating system integrated with diffuse ceiling ventilation, Building and Environment, 2022, 第一及通讯

[48] Effects of thermal and acoustic environments on workers' psychological and physiological stress in deep underground spaces, Building and Environment, 2022, 第一及通讯

[49] A review of ventilation and environmental control of underground spaces. Energies, 2022, 第一及通讯

[50] The synergy effect of temporal and spatial alliesthesia on occupants’ thermal comfort in air-conditioned temporarily occupied spaces (TOS), Building and Environment, 2022, 通讯

[51] On the use of wearable face and neck cooling fans to improve occupant thermal comfort in warm indoor environments, Energies, 2021, 第一

[52] Infection probability under different air distribution patterns, Building and Environment, 2021, 通讯

[53] Draught sensation assessment in an occupied space heated by stratified ventilation system: Attachment ventilation with relayed fans, Building and Environment, 2021, 通讯

[54] Enhanced effects of footwarmer by wearing sandals in winter office: A Swedish case study, Indoor and Built Environment, 2021, 第一及通讯

[55] A novel convection and radiation combined terminal device: its impact on occupant thermal comfort and cognitive performance in winter indoor environments, Energy and Buildings, 2021, 通讯

[56] Influence of relayed fans and low level exhausts on performance of attachment ventilation under heating mode. Journal of Building Engineering, 2021, 通讯

[57] A review of intensified conditioning of personal micro-environments: Moving closer to the human body, Energy and Built Environment, 2021, 第一

[58] 人工智能助力京津冀节能智慧城市发展,天津日报,2023,第一

[59] 建立健全口袋公园的标准体系,人民日报内参,2023,第一

[60] “城市伤疤地”疗伤,天津日报,2022,第一

[61] Personal comfort systems for improving indoor thermal comfort and air quality,英文专著,2023,第二

[62] 人脸微表情识别技术在人工环境的应用,中文专著,2024,第三

[63] 非接触式热舒适检测原理与应用,中文专著,2023,第一




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